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Cu-Doped MnO2 Nanoparticles Loaded with Docetaxel Synergistically Enhance Chemodynamic Therapy through Ferroptosis and Cuproptosis

ACS Applied Nano Materials [2025]
Lekang Liu, Mingbo Shao, Luoyuan Guo, Wenjun Wang, Xiuwen Zheng, Xiaolei Jiang
ABSTRACT

We have developed an innovative Cu-doped and DTX-loaded Cu-MnO2@DTX@FA (MCDF) nanodrug designed to strategically alter tumor microenvironment (TME) by harnessing the synergistic effects of chemodynamic therapy (CDT), chemotherapeutic agents, and the induction of ferroptosis and cuproptosis. The MCDF nanodrug efficiently degrades, releasing abundant Mn4+, Cu2+, and DTX. The conversion of Cu2+ to Cu+ facilitated by FDX1 initiates cuproptosis, while, similar to Mn2+, Cu+ reacts with hydrogen peroxide (H2O2) to generate hydroxyl radicals (·OH). Cu2+ and Mn4+ oxidize glutathione (GSH), significantly depleting GSH levels in tumor cells and inactivating GPX4, which further promotes ferroptosis. The release of Cu2+ and Mn4+ intensifies the cuproptosis. DTX effectively disrupts the cell division cycle, thereby inhibiting the proliferation and spread of tumor cells. The FA-modified MCDF is designed to evade immune detection while selectively targeting tumor tissues, ensuring precision in treatment delivery. This cutting-edge material not only provides a multifunctional therapeutic strategy but also sets the stage for the next generation of tumor-targeting nanomedicines.

MATERIALS

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